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柑橘褐斑病菌AaSIP2基因生物学功能初步研究 被引量:2

Preliminary Studies on the Function of AaSIP2 Gene in the Tangerine Pathotype of Alternaria alternata
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摘要 蔗糖非发酵(Sucrose non-fermenting 1,SNF1)蛋白激酶复合体是1个对真菌生长发育和致病力发挥重要作用且高度保守的异源三聚体蛋白,包含1个催化亚基α,两个调节亚基β、γ。前期研究表明,α亚基Snf1在柑橘褐斑病菌碳源利用和致病力方面具有重要作用。为了解SNF1复合体其他亚基在柑橘褐斑病菌中的功能,对柑橘褐斑病菌AlternariaalternataZ7菌株的蛋白序列进行搜索,鉴定到1个β亚基Sip2。通过基因敲除及回补技术,分析AaSIP2在柑橘褐斑病菌中生物学功能。结果显示,与野生型和回补菌株相比,AaSIP2缺失突变体产孢量降低且孢子萌发迟缓,对糖和KCl、CaCl_2胁迫更敏感;在不同单一碳源的MM培养基上生长速度受到不同程度抑制;对寄主的致病能力显著降低。初步证明AaSIP2参与调控柑橘褐斑病菌的产孢、孢子萌发、胁迫应答、碳源利用及致病性。 The sucrose non-fermenting 1(SNF1)protein kinase complex is a highly conserved heterotrimeric protein,including a catalytic subunit α and two regulatory subunits(β,γ),which plays an important role in fungal development and virulence. Our previous study revealed that catalytic subunit α of the tangerine pathotype of Alternaria alternata plays a crucial part in the utilization of alternative carbon sources and virulence. In order to determine the functions of other subunits of the SNF1 complex in the tangerine pathotype of A. alternata,we studied the protein sequence of the tangerine pathotype of A. alternata strain Z7 and identified one β subunit(AaSIP2). The biological functions of AaSIP2 were characterized using gene knock-out and complementation strategy. The results showed that the mutants had less conidia and slower spore germination,more sensitive to sugar and partial salt stress compared with the wild type and complementary strain. The vegetative growth of the ΔAaSip2 mutants were reduced in MM medium with different single carbon sources. Additionally,virulence assays revealed that ΔAaSip2 induced significantly reduced necrotic lesions on detached citrus leaves. In conclution,we reveal that AaSIP2 is required for utilization of carbon source,conidiation,spore germination,stress response and virulence in A. alternata.
作者 唐飞艳 孔向雯 吕韦玮 唐科志 TANG Feiyan;KONG Xiangwen;Lü Weiwei;TANG Kezhi(Citrus Research Institute,Southwest University,Chinese Academy of Agricultural Sciences,Chongqing 400712,China)
出处 《园艺学报》 CAS CSCD 北大核心 2018年第12期2358-2370,共13页 Acta Horticulturae Sinica
基金 教育部创新团队项目(IRT0976) 重庆市科技攻关项目(CSTC2012GG-YYJS0475).
关键词 柑橘 柑橘褐斑病菌 蔗糖非发酵蛋白激酶 AaSIP2基因 碳源利用 致病性 citrus tangerine pathotype of Alternaria alternata AaSIP2 utilization of carbon source virulence
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  • 1范永山,刘颖超,谷守芹,桂秀梅,董金皋.植物病原真菌的MAPK基因及其功能[J].微生物学报,2004,44(4):547-551. 被引量:23
  • 2Peever T L, Su G, Carpenter-Boggs L,et al. Molecular systematics of citrus-associated Alternaria species [J]. Mycologia ,2004,96 : 119 - 134. 被引量:1
  • 3Lu J Y. Plant Pathogenic Fungi (in Chinese) [M]. Beijing: China Agricultural Scientech Press (北京:中国农业出版社),2001. 被引量:1
  • 4Zhang T Y , Flora Fungorum Sinicorum Vol. 16 Altemaria eng ( in Chinese) [M].北京:科学出版社,2003. 被引量:1
  • 5Matin J E , Femandez H S. First report of Alternaria brown spot of citrus caused by Alternaria alternata in Peru [J]. Plant Disease, 2006, 90:686. 被引量:1
  • 6Elena K. Alternaria brown spot of Minneola in Greece; evaluation of citrus species susceptibility [ J]. European Journal of Plant Pathology, 2006, 115 (2) : 259 - 262. 被引量:1
  • 7Whiteside J O. A newly recorded Alternaria-induced brown spot disease on Dancy Tangerines in Florida [ J ]. Plant Disease Reporter, 1976,60: 326- 329. 被引量:1
  • 8Peres N A R, Agostini J P , Timmer L W. Outbreaks of Alternaria brown spot of citrus in Brasil and Argentina[JJ. Plant Disease, 2003,87: 750. 被引量:1
  • 9Solel Z. Alternaria brown spot on Minneola tangelos in Israel[ J ]. Plant Pathology, 1991,40 : 145-147. 被引量:1
  • 10Swart S H, Wingfield M J, Swart W I, et al. Chemical control of Alternaria brown spot on Minneola tangelo in South Africa [ J ]. Annals of Applied Biology, 1998, 133:17-30. 被引量:1

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